调节性c端基序在LRRTM2突触约束中的作用

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2021-09-09 DOI:10.1111/boc.202100026
Konstantina Liouta, Julia Chabbert, Sebastien Benquet, Béatrice Tessier, Vincent Studer, Matthieu Sainlos, Joris De Wit, Olivier Thoumine, Ingrid Chamma
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引用次数: 1

摘要

富亮氨酸重复跨膜蛋白(LRRTMs)是参与突触发育和可塑性的神经细胞粘附分子。LRRTM2是该家族中突触原性最强的亚型,其表达强烈局限于成熟神经元的兴奋性突触。然而,LRRTM2在突触中运输和稳定的机制尚不清楚。在这里,我们使用敲除策略结合单分子跟踪和超分辨率dSTORM显微镜研究了LRRTM2胞内结构域在兴奋性突触的膜表达和稳定中的作用。我们发现LRRTM2在海马神经元突触发生后的活动中起着重要的作用。成熟神经元突触形成过程中LRRTM2的敲除降低了兴奋性突触密度。LRRTM2 c端结构域的缺失消除了LRRTM2在树突中的区隔化,破坏了其突触富集。此外,我们发现LRRTM2在缺乏胞内结构域时扩散增加,并且该蛋白在突触中更分散。令人惊讶的是,突触上的LRRTM2约束强烈依赖于c端结构域的YxxC基序,但不依赖于pdz样结合基序ECEV。最后,LRRTM2在兴奋性突触中的纳米级组织依赖于其c端结构域,pdz结合基序和YxxC基序都参与其中。总之,这些结果表明LRRTM2在兴奋性突触的转运和富集依赖于其胞内结构域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Role of regulatory C-terminal motifs in synaptic confinement of LRRTM2

Leucine Rich Repeat Transmembrane proteins (LRRTMs) are neuronal cell adhesion molecules involved in synapse development and plasticity. LRRTM2 is the most synaptogenic isoform of the family, and its expression is strongly restricted to excitatory synapses in mature neurons. However, the mechanisms by which LRRTM2 is trafficked and stabilized at synapses remain unknown. Here, we examine the role of LRRTM2 intracellular domain on its membrane expression and stabilization at excitatory synapses, using a knock-down strategy combined to single molecule tracking and super-resolution dSTORM microscopy. We show that LRRTM2 operates an important shift in mobility after synaptogenesis in hippocampal neurons. Knock-down of LRRTM2 during synapse formation reduced excitatory synapse density in mature neurons. Deletion of LRRTM2 C-terminal domain abolished the compartmentalization of LRRTM2 in dendrites and disrupted its synaptic enrichment. Furtheremore, we show that LRRTM2 diffusion is increased in the absence of its intracellular domain, and that the protein is more dispersed at synapses. Surprisingly, LRRTM2 confinement at synapses was strongly dependent on a YxxC motif in the C-terminal domain, but was independent of the PDZ-like binding motif ECEV. Finally, the nanoscale organization of LRRTM2 at excitatory synapses depended on its C-terminal domain, with involvement of both the PDZ-binding and YxxC motifs. Altogether, these results demonstrate that LRRTM2 trafficking and enrichment at excitatory synapses are dependent on its intracellular domain.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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